An adult clock regulator links circadian rhythms to pancreatic β-cell maturation.

Ana P Montalvo, Zihan Gao, Mai Liu, Zoe L Gruskin, Andrew Leduc, Sam Preza, Yu Xie, Andrea V Rozo, June H Ahn, Juerg R Straubhaar, Nicolai Doliba, Doris Stoffers, Nikolai Slavov, Juan R Alvarez-Dominguez
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Abstract

The circadian clock attunes metabolism to daily energy cycles, but how it regulates maturation of metabolic tissues is poorly understood. Here we show that DEC1, a clock transcription factor induced in adult islet β cells, coordinates their glucose responsiveness by synchronizing energetic and secretory rhythms. DEC1 binds and regulates maturity-linked genes to integrate insulin exocytosis with energy metabolism, and β-cell Dec1 ablation disrupts their transcription synchrony. Dec1-disrupted mice develop lifelong glucose intolerance and insulin deficiency, despite normal islet formation and intact Clock/Bmal1 genes. Metabolic dysfunction upon β-cell Dec1 loss stems from poor coupling of insulin secretion to glucose metabolism, reminiscent of fetal/neonatal immaturity. We link stunted maturation to a deficit in circadian bioenergetics, prompted by compromised glucose utilization, mitochondrial dynamics, and respiratory metabolism, which is rescued by increased metabolic flux. Thus, DEC1 links circadian clockwork to β-cell metabolic maturation, revealing a hierarchy for how the clock programs metabolic tissue specialization.

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一种成人时钟成分将昼夜节律与胰腺β细胞成熟联系起来。
普遍存在的生物钟是如何协调组织特异性输出的,目前还不清楚。胰腺β细胞自主时钟使胰岛素分泌与日常能量循环相协调,而遗传或行为干扰的不同步会增加2型糖尿病的风险。我们发现,转录因子DEC1是一种在成年β细胞中诱导的时钟成分,通过同步能量代谢和分泌基因振荡来协调其葡萄糖反应性。尽管胰岛形成正常,昼夜节律时钟和Bmal1激活剂完整,但Dec1消融小鼠会发展为终身低胰岛素血症糖尿病。DEC1,而不是CLOCK/BMAL1,结合介导呼吸代谢和胰岛素胞吐的成熟相关基因,DEC1的缺失破坏了它们的转录同步性。因此,β细胞Dec1消融术由于葡萄糖反应不成熟而导致低胰岛素血症,抑制胰岛素节律。因此,Dec1将昼夜节律与β细胞成熟过程联系起来,使新陈代谢与昼夜能量循环相一致。
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